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Cadmium Nephrotoxicity Is Associated with Altered MicroRNA Expression in the Rat Renal Cortex

机译:镉肾毒性与大鼠肾皮质中MicroRNA表达的改变有关。

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摘要

Cadmium (Cd) is a nephrotoxic environmental pollutant that causes a generalized dysfunction of the proximal tubule characterized by polyuria and proteinuria. Even though the effects of Cd on the kidney have been well-characterized, the molecular mechanisms underlying these effects have not been fully elucidated. MicroRNAs (miRNAs) are small non-coding RNAs that regulate cellular and physiologic function by modulating gene expression at the post-transcriptional level. The goal of the present study was to determine if Cd affects renal cortex miRNA expression in a well-established animal model of Cd-induced kidney injury. Male Sprague-Dawley rats were treated with subcutaneous injections of either isotonic saline or CdCl2 (0.6 mg/kg) 5 days a week for 12 weeks. The 12-week Cd-treatment protocol resulted in kidney injury as determined by the development of polyuria and proteinuria, and a significant increase in the urinary biomarkers Kim-1, β2 microglobulin and cystatin C. Total RNA was isolated from the renal cortex of the saline control and Cd treated animals, and differentially expressed miRNAs were identified using µParafloTM microRNA microarray analysis. The microarray results demonstrated that the expression of 44 miRNAs were significantly increased and 54 miRNAs were significantly decreased in the Cd treatment group versus the saline control (t-test, p ≤ 0.05, N = 6 per group). miR-21-5p, miR-34a-5p, miR-146b-5p, miR-149-3p, miR-224-5p, miR-451-5p, miR-1949, miR-3084a-3p, and miR-3084c-3p demonstrated more abundant expression and a significant two-fold or greater increased expression in the Cd-treatment group versus the saline control group. miR-193b-3p, miR-455-3p, and miR-342-3p demonstrated more abundant expression and a significant two-fold or greater decreased expression in the Cd-treatment group versus the saline control group. Real-time PCR validation demonstrated (1) a significant (t-test, p ≤ 0.05, N = 6 per group) increase in expression in the Cd-treated group for miR-21-5p (2.7-fold), miR-34a-5p (10.8-fold), miR-146b-5p (2-fold), miR-224-5p (10.2-fold), miR-3084a-3p (2.4-fold), and miR-3084c-3p (3.3-fold) and (2) a significant (t-test, p ≤ 0.05, N = 6 per group) 52% decrease in miR-455-3p expression in the Cd-treatment group. These findings demonstrate that Cd significantly alters the miRNA expression profile in the renal cortex and raises the possibility that dysregulated miRNA expression may play a role in the pathophysiology of Cd-induced kidney injury. In addition, these findings raise the possibility that Cd-dysregulated miRNAs might be used as urinary biomarkers of Cd exposure or Cd-induced kidney injury.
机译:镉(Cd)是一种肾毒性环境污染物,会导致以小便和蛋白尿为特征的近端小管普遍功能障碍。尽管Cd对肾脏的作用已被很好地表征,但这些作用的分子机制尚未得到充分阐明。 MicroRNA(miRNA)是小的非编码RNA,可通过在转录后水平上调节基因表达来调节细胞和生理功能。本研究的目的是确定Cd是否会在成熟的Cd诱发的肾损伤动物模型中影响肾皮质miRNA表达。雄性Sprague-Dawley大鼠每周5天皮下注射等渗盐水或CdCl2(0.6 mg / kg),治疗12周。根据多尿症和蛋白尿的发展确定,为期12周的Cd治疗方案导致肾脏损伤,尿中生物标志物Kim-1,β2微球蛋白和半胱氨酸蛋白酶抑制剂C显着增加。从大鼠肾皮质中分离出总RNA。盐对照和Cd处理的动物,并使用µParaflo TM microRNA微阵列分析鉴定了差异表达的miRNA。微阵列结果表明,与盐水对照组相比,Cd治疗组中44个miRNA的表达显着增加,而54个miRNA的表达则显着降低(t检验,p≤0.05,每组N = 6)。 miR-21-5p,miR-34a-5p,miR-146b-5p,miR-149-3p,miR-224-5p,miR-451-5p,miR-1949,miR-3084a-3p和miR-3084c与盐水对照组相比,Cd处理组的-3p表现出更丰富的表达,并且表达显着提高了两倍甚至更高。与盐水对照组相比,Cd处理组的miR-193b-3p,miR-455-3p和miR-342-3p表现出更丰富的表达,并且表达显着降低两倍或更多。实时PCR验证显示(1)miR-21-5p(2.7倍),miR-34a在Cd处理组中的表达显着增加(t检验,p≤0.05,N = 6) -5p(10.8倍),miR-146b-5p(2倍),miR-224-5p(10.2倍),miR-3084a-3p(2.4倍)和miR-3084c-3p(3.3-倍)和(2)镉治疗组中miR-455-3p表达显着下降(t检验,p≤0.05,每组N = 6),降低52%。这些发现表明,Cd显着改变了肾皮质中miRNA的表达谱,并增加了miRNA表达失调可能在Cd诱导的肾脏损伤的病理生理中发挥作用的可能性。此外,这些发现增加了将Cd失调的miRNA用作Cd暴露或Cd诱导的肾脏损伤的尿液生物标志物的可能性。

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